Laboratoire d'Ingénierie des Matériaux Polymères (UMR CNRS 5223) Institut National des Sciences Appliquées (INSA-Lyon)-Université Lyon 1, 17 av. Jean Capelle, 69621 Villeurbanne (France).
Materials Research Laboratory, University of Santa Barbara (USA).
Angew Chem Int Ed Engl. 2015 Sep 14;54(38):11117-21. doi: 10.1002/anie.201504838. Epub 2015 Jul 31.
We designed efficient precursors that combine complementary associative groups with exceptional binding affinities and thiocarbonylthio moieties enabling precise RAFT polymerization. Well defined PS and PMMA supramolecular polymers with molecular weights up to 30 kg mol(-1) are synthesized and shown to form highly stable supramolecular diblock copolymers (BCPs) when mixed, in non-polar solvents or in the bulk. Hierarchical self-assembly of such supramolecular BCPs by thermal annealing affords morphologies with excellent lateral order, comparable to features expected from covalent diblock copolymer analogues. Simple washing of the resulting materials with protic solvents disrupts the supramolecular association and selectively dissolves one polymer, affording a straightforward process for preparing well-ordered nanoporous materials without resorting to crosslinking or invasive chemical degradations.
我们设计了高效的前驱体,将互补的缔合基团与具有特殊结合亲和力的硫羰基硫部分结合在一起,从而能够进行精确的 RAFT 聚合。合成了具有明确分子量的 PS 和 PMMA 超分子聚合物,分子量高达 30kg/mol,并证明在非极性溶剂或本体中混合时,它们可以形成高度稳定的超分子两亲嵌段共聚物(BCP)。通过热退火对这种超分子 BCP 进行分级自组装,可以得到具有优异横向有序性的形态,与共价两亲嵌段共聚物类似物的特征相当。用质子溶剂简单地洗涤所得材料会破坏超分子缔合,并选择性地溶解一种聚合物,从而提供了一种无需交联或侵入性化学降解即可制备具有良好有序性的纳米多孔材料的简单方法。